VR equipment storage device

By designing quick-release devices and locking mechanisms, the problems of messy storage, poor adjustment functions, and poor connection stability in VR device storage devices are solved, achieving stable, flexible storage and efficient management of VR devices.

CN224184741UActive Publication Date: 2026-05-01HEBEI UNIV OF TECH
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEBEI UNIV OF TECH
Filing Date
2025-06-18
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing VR device storage devices suffer from problems such as disorganized storage, poor adjustment functions, and poor connection stability, which affect management efficiency and safety of use.

Method used

Employing quick-release devices and locking mechanisms, a flexible disassembly and assembly system is constructed through the coordinated work of ferrules, ferrules, ferrules, irregular grooves, control sleeves, and irregular plates. A reliable locking system is constructed through the precise cooperation of sliding blocks, sliding sleeves, movable springs, round blocks, push springs, mating plates, return springs, fixed blocks, return blocks, thrust bearings, and top rods. Combined with the precise cooperation of crossbars, connecting blocks, support rods, and insertion holes, position adjustment and stable installation are achieved.

Benefits of technology

It has achieved standardized storage of VR devices, improved space utilization and adjustment efficiency, ensured the stability and safety of the devices, and reduced management difficulty and maintenance costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224184741U_ABST
    Figure CN224184741U_ABST
Patent Text Reader

Abstract

The utility model discloses a VR equipment storage device which comprises a storage frame, the storage frame is internally provided with a storage device, the storage frame is internally provided with a quick release device, the quick release device comprises a clamping sleeve, a clamping rod, a clamping groove, a clamping frame, a special-shaped groove, a control sleeve and a special-shaped plate, the clamping groove is formed in the outer side of the clamping rod, the clamping frame is connected to one side of the special-shaped plate, the special-shaped groove is formed in the control sleeve, and the control sleeve is connected with the clamping frame. A locking mechanism is installed on the outer side of the clamping sleeve and comprises a sliding block, a sliding sleeve, a movable spring, round blocks, a push spring, a matching plate, a matching hole, a reset spring, a fixed block, a reset block, a thrust bearing and an ejector rod, the sliding block is arranged on one side of the control sleeve, the movable spring is connected with the sliding block, the round blocks are installed on the outer side of the clamping sleeve, the matching hole is formed in the matching plate, and the push spring is connected with the fixed block. According to the storage device, the problems of a traditional storage device in the aspects of storage standardability and structural stability are solved, and the practicability and reliability of the storage device are remarkably improved through mechanical linkage and multiple protection.
Need to check novelty before this filing date? Find Prior Art

Description

A VR device storage device Technical Field

[0001] This utility model relates to the field of VR device storage technology, and more specifically, it relates to a VR device storage device. Background Technology

[0002] In the field of VR device storage devices, the standardization of storage and the stability of the structure directly affect the management efficiency and safety of the device. However, the VR device storage devices currently on the market still have many technical defects in practical applications. These problems not only affect the storage effect, but may also lead to device damage and increase the difficulty of management.

[0003] The primary problem is disorganized storage. Existing VR device storage devices have significant flaws: First, VR glasses and VR headsets lack dedicated storage space and are simply piled up haphazardly; second, the messy storage method increases the difficulty of retrieval; in addition, this design deficiency not only reduces storage efficiency but may also lead to device damage due to inconvenient access, affecting the user experience and increasing management time and maintenance costs.

[0004] More notably, the adjustment function is poor, and there are obvious problems in the support structure of the VR device storage device: First, the spacing between the support rods is fixed, lacking flexibility; second, the storage position is singular and cannot be adjusted according to needs; third, it cannot adapt to the storage needs of different numbers of devices; in addition, this design deficiency not only limits the number of devices that can be stored, but may also lead to resource waste due to low space utilization. This design defect not only reduces storage flexibility, but may also affect the usage effect due to the fixed design, and increase space occupation and management difficulty.

[0005] Most critically, the connection stability is poor. Although some devices achieve the function of adjusting the position of the support rod through quick assembly and disassembly, there are serious problems: First, the connection structure is simple and not strong enough, and the structure is prone to loosening. When the device is moved or during storage or retrieval, external forces can easily cause the structure to be stressed, resulting in loosening and displacement. This design deficiency not only affects the safety of storage, but may also cause the device to fall due to structural failure. This structural defect not only reduces the service life of the device, but may also lead to safety accidents due to poor stability, affecting the quality of storage and safety of use. Summary of the Invention

[0006] In view of the problems existing in the prior art, this utility model provides a VR device storage device to solve the technical problems mentioned in the background art.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a VR device storage device, including a storage rack, in which the storage device is installed. The storage rack is equipped with a quick-release device, which includes a sleeve, a lever, a slot, a bracket, a shaped groove, a control sleeve, and a shaped plate. The sleeve is detachably fitted onto the outside of the lever. The slot is located on the outside of the lever. The bracket is fixedly connected to one side of the shaped plate, and the end of the bracket is inserted into the slot. The shaped groove is located in the control sleeve. The shaped plate is movably disposed within the shaped groove. A locking mechanism is installed on the outside of the sleeve, comprising a sliding block, a sliding sleeve, and a movable spring. The system comprises a circular block, a push spring, a mating plate, a mating hole, a return spring, a fixing block, a return block, a thrust bearing, and a push rod. The sliding block is located on one side of the control sleeve, and the sliding sleeve is fitted onto the outside of the ferrule. The two ends of the movable spring are connected to two adjacent sliding blocks. Multiple circular blocks are fixedly installed on the outside of the ferrule. The push spring is connected to one side of the sliding sleeve. The thrust bearing is detachably installed on one side of the mating plate. The mating plate is rotatably installed on the outside of the ferrule. The push rod is fixedly connected to one side of the sliding sleeve. The mating hole is opened on the mating plate. The return block is fixedly connected to one side of the mating plate. The two ends of the return spring are connected to the return block and the fixing block. The fixing block is fixedly installed on the outside of the ferrule.

[0008] The present invention is further configured such that the storage device includes a crossbar, a connecting block, a support rod, and a socket. The crossbar is fixedly installed on both sides of the storage rack, the connecting block is fixedly installed on one side of the support rod, the socket is opened on the crossbar, and multiple sockets are provided. The connecting blocks connected to the two ends of the support rod are at different heights, that is, the support rod is installed on the crossbar at an angle.

[0009] The present invention is further configured such that a longitudinal bar is provided on one side of the crossbar, and a plurality of the longitudinal bars are fixedly installed inside the storage rack.

[0010] The present invention is further configured such that a rotating wheel is rotatably provided on one side of the sliding block, and the rotating wheel is engaged between two corresponding circular blocks, the rotating wheel ensuring smooth operation.

[0011] The present invention is further configured such that a guide block is fixedly provided on the inner side of the sliding sleeve, and multiple guide grooves are provided on the outer side of the sleeve. The guide block slides in the guide grooves, and the arrangement of the guide block and guide grooves realizes the guidance and limiting of the sliding sleeve.

[0012] The present invention is further configured such that a plurality of guide rails are fixedly provided on one side of the control sleeve, and a guide groove is provided on the inner side of the sliding block. The guide groove is adapted to the guide rails, and the arrangement of the guide rails and the guide grooves ensures the stable movement of the sliding block.

[0013] The present invention is further configured such that a spring is connected to one side of the irregular plate, and the other end of the spring is connected to the outer wall of the sleeve. The spring ensures precise control of the position of the card holder and the irregular plate.

[0014] The present invention is further configured such that a slide rail is fixedly provided on the inner side of the sleeve, and a slide groove is provided on the outer side of the lever. The slide groove is adapted to the slide rail, and the arrangement of the slide rail and the slide groove ensures the precise alignment of the sleeve and the lever.

[0015] Compared with the prior art, the present invention provides a VR device storage device, which has the following beneficial effects:

[0016] 1. The storage device constructs a scientific storage system through the precise coordination of crossbars, connecting blocks, support rods, and sockets. The crossbars provide the installation foundation, the multiple sockets allow for flexible adjustment of the support rod position, the inclined installation of the support rods ensures automatic sliding function, and the vertical bars enhance the overall structural strength. This structure not only achieves standardized storage but also provides position adjustment through the socket design and ensures convenient access through the inclined design. It effectively solves the problem of messy storage in traditional storage devices, improves space utilization, and achieves standardized management.

[0017] 2. The quick-release device forms a flexible assembly and disassembly system through the coordinated work of the sleeve, lever, slot, bracket, irregular groove, control sleeve, and irregular plate. The sliding fit between the sleeve and lever provides the basis for assembly and disassembly, the fit between the irregular groove and the irregular plate enables precise control, and the spring ensures stable control of the bracket. This structure not only achieves quick assembly and disassembly through the sliding mechanism, but also provides precise locking through the irregular diameter structure, effectively solving the problem of poor adjustment function of traditional storage devices, improving adjustment efficiency, and achieving flexible adaptation.

[0018] 3. The locking mechanism, through the precise cooperation of sliding block, sliding sleeve, movable spring, circular block, push spring, mating plate, mating hole, return spring, fixed block, return block, thrust bearing and top rod, constructs a reliable locking system. The guiding design of the sliding sleeve provides the basis for movement, and the cooperation between the rotating wheel and the circular block realizes the position locking. This structure not only achieves stable positioning through locking, but also provides smooth movement through the guiding mechanism, and ensures reliable operation through the reset design. It effectively solves the problem of poor connection stability of traditional storage devices, adapts to various usage environments, and ensures storage safety. Attached Figure Description

[0019] Figure 1 is a schematic diagram of the overall structure of a VR device storage device according to the present invention.

[0020] Figure 2 is a cross-sectional structural diagram of this utility model;

[0021] Figure 3 is a structural schematic diagram of the quick-release device and locking mechanism in this utility model;

[0022] Figure 4 is a cross-sectional view of the quick-release device and locking mechanism in this utility model.

[0023] Figure 5 is a schematic diagram of the dispersed structure of the sliding sleeve and the control sleeve in this utility model.

[0024] In the diagram: 1. Storage rack; 2. Card sleeve; 3. Card rod; 4. Card slot; 5. Card holder; 6. Irregular groove; 7. Control sleeve; 8. Irregular plate; 9. Sliding block; 10. Sliding sleeve; 11. Movable spring; 12. Round block; 13. Push spring; 14. Mating plate; 15. Mating hole; 16. Return spring; 17. Fixing block; 18. Return block; 19. Thrust bearing; 20. Top rod; 21. Crossbar; 22. Connecting block; 23. Support rod; 24. Insertion hole; 25. Vertical rod; 26. Rotating wheel; 27. Guide block; 28. Guide groove; 29. ​​Guide rail; 30. Guide groove; 31. Spring; 32. Slide rail; 33. Slide groove. Detailed Implementation

[0025] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0026] It should be noted that, unless otherwise specified, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains.

[0027] In this utility model, unless otherwise stated, the orientations used, such as "up" and "down", usually refer to the direction shown in the accompanying drawings, or to the vertical, perpendicular, or gravitational direction; similarly, for ease of understanding and description, "left" and "right" usually refer to the left and right shown in the accompanying drawings; "inner" and "outer" refer to the inner and outer contours of each component itself, but the above directional terms are not used to limit this utility model.

[0028] Please refer to Figures 1-5. A VR device storage device includes a storage rack 1, in which the storage device is installed. The storage rack 1 is provided with a quick-release device, which includes a sleeve 2, a lever 3, a slot 4, a bracket 5, a shaped groove 6, a control sleeve 7, and a shaped plate 8. The sleeve 2 is detachably fitted onto the outside of the lever 3. The slot 4 is opened on the outside of the lever 3. The bracket 5 is fixedly connected to one side of the shaped plate 8, and the end of the bracket 5 is inserted into the slot 4. The shaped groove 6 is opened in the control sleeve 7. The shaped plate 8 is movably disposed in the shaped groove 6. A locking mechanism is installed on the outside of the sleeve 2. The locking mechanism includes a sliding block 9, a sliding sleeve 10, a movable spring 11, a round block 12, a push spring 13, a mating plate 14, and a mating hole 15. The system includes a reset spring 16, a fixed block 17, a reset block 18, a thrust bearing 19, and a push rod 20. A sliding block 9 is located on one side of the control sleeve 7. A sliding sleeve 10 is fitted onto the outside of the ferrule 2. The two ends of a movable spring 11 are connected to two adjacent sliding blocks 9. Multiple round blocks 12 are fixedly installed on the outside of the ferrule 2. A push spring 13 is connected to one side of the sliding sleeve 10. The thrust bearing 19 is detachably installed on one side of the mating plate 14. The mating plate 14 is rotatably installed on the outside of the ferrule 2. The push rod 20 is fixedly connected to one side of the sliding sleeve 10. A mating hole 15 is opened on the mating plate 14. A reset block 18 is fixedly connected to one side of the mating plate 14. The two ends of the reset spring 16 are connected to the reset block 18 and the fixed block 17. The fixed block 17 is fixedly installed on the outside of the ferrule 2.

[0029] The storage device includes a crossbar 21, a connecting block 22, a support rod 23, and a socket 24. The crossbar 21 is fixedly installed on both sides of the storage rack 1, the connecting block 22 is fixedly installed on one side of the support rod 23, and the socket 24 is opened on the crossbar 21. There are multiple sockets 24. The connecting blocks 22 connected to the two ends of the support rod 23 are at different heights, that is, the support rod 23 is installed on the crossbar 21 at an angle.

[0030] A longitudinal bar 25 is provided on one side of the crossbar 21, and multiple longitudinal bars 25 are fixedly installed inside the storage rack 1.

[0031] In this embodiment, when the device is needed, the VR glasses and VR helmet are first placed between the two corresponding support rods 23 according to the actual storage requirements, so that the two support rods 23 support the VR glasses and VR helmet. The horizontal bar 21 facilitates the installation of the connecting block 22. The design of multiple holes 24 facilitates the adjustment of the position of the support rods 23 and the connecting block 22 to maximize the use of space resources. The vertical bar 25 strengthens the overall structural strength of the storage rack 1. When the VR glasses or VR helmet need to be taken out, after the VR glasses or VR helmet at the bottom is taken out, due to the inclined installation of the support rod 23 and gravity, the other VR glasses or VR helmets will slide down, so that the VR glasses or VR helmet at the lowest end contacts the end plate set at one end of the slide rod.

[0032] Please refer to Figures 3-5 for a further embodiment of the overall device: a rotating wheel 26 is provided on one side of the sliding block 9, and the rotating wheel 26 is engaged between the two corresponding circular blocks 12.

[0033] A guide block 27 is fixedly provided on the inner side of the sliding sleeve 10, and multiple guide grooves 28 are provided on the outer side of the sleeve 2, with the guide block 27 sliding in the guide grooves 28.

[0034] Multiple guide rails 29 are fixedly provided on one side of the control sleeve 7, and a guide groove 30 is provided on the inner side of the sliding block 9. The guide groove 30 is adapted to the guide rails 29.

[0035] A spring 31 is connected to one side of the irregular plate 8, and the other end of the spring 31 is connected to the outer wall of the sleeve 2.

[0036] The inner side of the sleeve 2 is fixed with a slide rail 32, and the outer side of the lever 3 is provided with a slide groove 33, which is adapted to the slide rail 32.

[0037] More specifically, when the position of the support rod 23 needs to be adjusted, firstly, the mating plate 14 is rotated forward, causing the thrust bearing 19 mounted on one side and the reset block 18 mounted on the other side to rotate. Then, the reset block 18 and the fixing block 17 cooperate to press the reset spring 16, causing the mating plate 14 to drive the mating hole 15 to rotate. When the reset spring 16 is pressed to its limit, the mating hole 15 rotates to a position concentric with the push rod 20. Then, the sliding sleeve 10 is pushed, causing the sliding sleeve 10 to drive the guide block 27 to slide along the guide groove 28. The sliding sleeve 10 will also drive the push rod 20 to gradually pass into the mating hole 15. The sliding sleeve 10 and the thrust bearing 19 will press the push spring 13. Then, the sliding sleeve 10 will no longer limit the outer side of the rotating wheel 26. Then, the control sleeve 7 is rotated forward, causing the sliding block 9 to rotate forward through the guide rail 29 and guide groove 30 on one side. The sliding block 9 then drives the rotating wheel 26, which is mounted on one side, to move out from between the two round blocks 12. The rotating wheel 26 then drives the sliding block 9 to slide outward along the guide rail 29 and guide groove 30, and the sliding block 9 will cause the movable spring 11 to stretch outward. At the same time, the control sleeve 7 will cause the irregular groove 6 opened on the inner side to rotate. Then, the spring 31 pushes the irregular plate 8 to move outward, so that the outer wall of the irregular plate 8 is always in contact with the inner wall of the irregular groove 6. Then, the irregular plate 8 will cause the card holder 5 connected on the other side to gradually be pulled out of the card slot 4. Then, the card sleeve 2 is pulled downward, causing the card sleeve 2 to drive the slide rail 32 to slide out of the slide groove 33. Then, remove the retaining sleeve 2 located below the connecting bracket of the support rod 23 as described above. Then, lift the support rod 23 upwards, causing it to pull the connecting rod 3 below it out of the slot via the connecting block 22. Then, remove the other support rods 23 as described above. Move the support rod 23 to a suitable position, ensuring the connecting rod 3 below is concentric with the corresponding slot. Place the support rod 23 on the crossbeam, allowing the rod 3 to pass through the corresponding slot. Then, fit the retaining sleeve 2 from below onto the outside of the rod 3, allowing the slide rail 32 to slide into the slide groove 33. Then, rotate the control sleeve 7 in the opposite direction, causing the inner shaped groove 6 to rotate. The inner wall of the shaped groove 6 then presses against the outer wall of the shaped plate 8, causing... The irregularly shaped plate 8 slides inward and presses against the spring 31. Then, the irregularly shaped plate 8 will drive the card holder 5 connected on the other side to insert into the card slot 4. At the same time, the control sleeve 7 drives the sliding block 9 to rotate in the opposite direction through the cooperation of the guide rail 29 and the guide groove 30. Then, the sliding block 9 drives the rotating wheel 26 to rotate in the opposite direction. When the card holder 5 is fully inserted into the card slot 4, the rotation of the control sleeve 7 stops. At this time, the sliding block 9 drives the rotating wheel 26 to move between the original two circular blocks 12. Then, the movable spring 11 resets and pulls the sliding block 9 to slide inward along the guide rail 29 and the guide groove 30. Then, the sliding block 9 drives the rotating wheel 26 to lock between the original two circular blocks 12. Then, the sliding sleeve 10 is released, and the push spring 13 pushes the sliding sleeve 10 to drive the guide block 27 to slide and reset along the guide groove 28.Furthermore, the sliding sleeve 10 drives the top rod 20 to slide and reset. After the push spring 13 is fully reset, the top rod 20 no longer limits the mating plate 14 through the mating hole 15. Then, the reset spring 16 pushes the reset block 18 to rotate and reset. The reset block 18 then drives the mating hole 15 to rotate and reset to a position not corresponding to the top rod 20 through the mating plate 14. The top rod 20 then provides stable support for the sliding sleeve 10. With the guide block 27 and guide groove 28 limiting the sliding sleeve 10, the sliding sleeve 10 cannot slide. Then, the inner wall of the sliding sleeve 10 limits the outer wall of the rotating wheel 26, preventing the rotating wheel 26 and the sliding block 9 from sliding outward. This forms a locking limit on the control sleeve 7, preventing the control sleeve 7 from rotating. This ensures the stable installation of the support rod 23 and the stable storage and placement of the VR device.

[0038] In summary, when using or operating the device: When the device is needed, first place the VR glasses and VR helmet between the two corresponding support rods 23 according to the actual storage requirements, so that the two support rods 23 support the VR glasses and VR helmet. The horizontal bar 21 facilitates the installation of the connecting block 22. The design of multiple holes 24 facilitates the adjustment of the position of the support rods 23 and the connecting block 22 to maximize the use of space resources. The vertical bar 25 strengthens the overall structural strength of the storage rack 1. When it is necessary to take out the VR glasses or VR helmet, after taking out the VR glasses or VR helmet at the bottom, due to the inclined installation of the support rod 23 and gravity, the other VR glasses or VR helmets will slide down, so that the VR glasses or VR helmet at the lowest end contacts the end plate set at one end of the sliding rod.

[0039] When the position of the support rod 23 needs to be adjusted, firstly, rotate the mating plate 14 in the forward direction, causing the thrust bearing 19 mounted on one side and the reset block 18 mounted on the other side to rotate. Then, the reset block 18 and the fixing block 17 cooperate to press the reset spring 16, causing the mating plate 14 to drive the mating hole 15 to rotate. When the reset spring 16 is pressed to its limit, the mating hole 15 rotates to a position concentric with the push rod 20. Then, push the sliding sleeve 10, causing the sliding sleeve 10 to drive the guide block 27 to slide along the guide groove 28. The sliding sleeve 10 will also drive the push rod 20 to gradually pass into the mating hole 15. The sliding sleeve 10 will cooperate with the thrust bearing 19 to press the push spring 13. Then, the sliding sleeve 10 will no longer limit the outer side of the rotating wheel 26. Rotating the control sleeve 7 in the forward direction causes the sliding block 9 to rotate forward via the guide rail 29 and guide groove 30 on one side. The sliding block 9 then drives the rotating wheel 26, which is mounted on one side, to move out from between the two circular blocks 12. The rotating wheel 26 then drives the sliding block 9 to slide outward along the guide rail 29 and guide groove 30, and the sliding block 9 causes the movable spring 11 to stretch outward. Simultaneously, the control sleeve 7 causes the irregularly shaped groove 6 on its inner side to rotate. The spring 31 then pushes the irregularly shaped plate 8 outward, ensuring that the outer wall of the irregularly shaped plate 8 remains in contact with the inner wall of the irregularly shaped groove 6. The irregularly shaped plate 8 then causes the card holder 5 connected to the other side to gradually be pulled out of the card slot 4. Finally, the card sleeve 2 is pulled downward, causing the card sleeve 2 to drive the slide rail 32 to slide out of the slide groove 33. Then, remove the retaining sleeve 2 located below the connecting bracket of the support rod 23 as described above. Then, lift the support rod 23 upwards, causing it to pull the connecting rod 3 below it out of the slot via the connecting block 22. Then, remove the other support rods 23 as described above. Move the support rod 23 to a suitable position, ensuring the connecting rod 3 below is concentric with the corresponding slot. Place the support rod 23 on the crossbeam, allowing the rod 3 to pass through the corresponding slot. Then, fit the retaining sleeve 2 from below onto the outside of the rod 3, allowing the slide rail 32 to slide into the slide groove 33. Then, rotate the control sleeve 7 in the opposite direction, causing the inner shaped groove 6 to rotate. The inner wall of the shaped groove 6 then presses against the outer wall of the shaped plate 8, causing... The irregularly shaped plate 8 slides inward and compresses the spring 31. Then, the irregularly shaped plate 8 drives the card holder 5 connected to the other side to insert into the card slot 4. At the same time, the control sleeve 7 drives the sliding block 9 to rotate in the opposite direction through the cooperation of the guide rail 29 and the guide groove 30. Then, the sliding block 9 drives the rotating wheel 26 to rotate in the opposite direction. When the card holder 5 is fully inserted into the card slot 4, the rotation of the control sleeve 7 stops. At this time, the sliding block 9 drives the rotating wheel 26 to move between the original two circular blocks 12. Then, the movable spring 11 resets and pulls the sliding block 9 to slide inward along the guide rail 29 and the guide groove 30. Then, the sliding block 9 drives the rotating wheel 26 to lock into the original two circular blocks 12. Then, the sliding sleeve 10 is released, and the push spring 13 pushes the sliding sleeve 10 to drive the guide block 27 to slide and reset along the guide groove 28.Furthermore, the sliding sleeve 10 drives the top rod 20 to slide and reset. After the push spring 13 is fully reset, the top rod 20 no longer limits the mating plate 14 through the mating hole 15. Then, the reset spring 16 pushes the reset block 18 to rotate and reset. The reset block 18 then drives the mating hole 15 to rotate and reset to a position not corresponding to the top rod 20 through the mating plate 14. The top rod 20 then provides stable support for the sliding sleeve 10. With the guide block 27 and guide groove 28 limiting the sliding sleeve 10, the sliding sleeve 10 cannot slide. Then, the inner wall of the sliding sleeve 10 limits the outer wall of the rotating wheel 26, preventing the rotating wheel 26 and the sliding block 9 from sliding outward. This forms a locking limit on the control sleeve 7, preventing the control sleeve 7 from rotating. This ensures the stable installation of the support rod 23 and the stable storage and placement of the VR device.

[0040] Of all the solutions mentioned above, those involving the connection between two components can be selected according to the actual situation, such as welding, bolt and nut connection, bolt or screw connection, or other known connection methods, which will not be elaborated here. For all the fixed connections mentioned above, welding is preferred. Although embodiments of this utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this utility model. The scope of this utility model is defined by the appended claims and their equivalents.

[0041] Any aspects not covered in this utility model are applicable to the prior art.

Claims

1. A VR device storage device, comprising a storage rack (1), characterized in that: The storage rack (1) is equipped with a storage device and a quick-release device. The quick-release device includes a sleeve (2), a lever (3), a slot (4), a bracket (5), a groove (6), a control sleeve (7), and a plate (8). The slot (4) is located on the outside of the lever (3). The bracket (5) is connected to one side of the plate (8). The groove (6) is located in the control sleeve (7). A locking mechanism is installed on the outside of the sleeve (2). The locking mechanism includes a sliding block (9), a sliding sleeve (10), a movable spring (11), a round block (12), a push spring (13), a mating plate (14), and a mating hole. (15), reset spring (16), fixed block (17), reset block (18), thrust bearing (19) and push rod (20), sliding block (9) is set on one side of control sleeve (7), movable spring (11) is connected to sliding block (9), multiple round blocks (12) are installed on the outside of sleeve (2), push spring (13) is connected to one side of sliding sleeve (10), thrust bearing (19) is installed on one side of mating plate (14), push rod (20) is connected to one side of sliding sleeve (10), mating hole (15) is opened on mating plate (14), and the two ends of reset spring (16) are connected to reset block (18) and fixed block (17).

2. The VR device storage device according to claim 1, characterized in that: The storage device includes a crossbar (21), a connecting block (22), a support rod (23), and a socket (24). The crossbar (21) is fixedly installed on both sides of the storage rack (1). The connecting block (22) is fixedly installed on one side of the support rod (23). The socket (24) is opened on the crossbar (21). There are multiple sockets (24). The connecting blocks (22) connected to both ends of the support rod (23) are at different heights, that is, the support rod (23) is installed on the crossbar (21) at an angle.

3. The VR device storage apparatus of claim 2, wherein: A longitudinal bar (25) is provided on one side of the crossbar (21), and multiple longitudinal bars (25) are fixedly installed on the inside of the storage rack (1).

4. A VR device storage device according to any one of claims 1-3, characterized in that: The sliding block (9) has a rotating wheel (26) on one side, which is engaged between two corresponding circular blocks (12).

5. The VR device storage apparatus of claim 4, wherein: The sliding sleeve (10) is fixedly provided with a guide block (27) on the inner side, and the sleeve (2) is provided with multiple guide grooves (28) on the outer side, and the guide block (27) slides in the guide grooves (28).

6. The VR device storage apparatus of claim 5, wherein: The control sleeve (7) is fixedly provided with multiple guide rails (29) on one side, and the sliding block (9) is provided with a guide groove (30) on the inner side, and the guide groove (30) is adapted to the guide rail (29).

7. A VR device storage device according to claim 1, characterized in that: A spring (31) is connected to one side of the irregular plate (8), and the other end of the spring (31) is connected to the outer wall of the sleeve (2).

8. A VR device storage device according to claim 7, characterized in that: The inner side of the sleeve (2) is fixed with a slide rail (32), and the outer side of the lever (3) is provided with a slide groove (33), which is adapted to the slide rail (32).